The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of tissue engineering has been much investigated. The key properties of the biomaterials used to prepare such scaffolds include biodegradability, biocompatibility and a well-defined three-dimensional 3-Dpore network structure. In this study a poly(D,L-lactide)/nanosized hydroxyapatite (PDLLA/nano-Hap) composite resin was prepared and used to fabricate composite films and computer designed porous scaffolds by micro-stereolithography, mixing varying quantities of nano-Hap powder and a liquid photoinitiator into a photo-crosslinkable PDLLA-diacrylate resin. The influence of nano-Hap on the rheological and photochemical properties of the resins was...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
For the fabrication of tissue engineering scaffolds, the intended tissue formation process imposes r...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Rapid prototyping techniques such as stereolithography allow for building designed tissue engineerin...
Designing calcium phosphate-loaded polymeric porous scaffolds with controlled architecture using ste...
Designing calcium phosphate-loaded polymeric porous scaffolds with controlled architecture using ste...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
For the fabrication of tissue engineering scaffolds, the intended tissue formation process imposes r...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
The preparation of scaffolds to facilitate the replacement of damaged tissues and organs by means of...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Rapid prototyping techniques such as stereolithography allow for building designed tissue engineerin...
Designing calcium phosphate-loaded polymeric porous scaffolds with controlled architecture using ste...
Designing calcium phosphate-loaded polymeric porous scaffolds with controlled architecture using ste...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
For the fabrication of tissue engineering scaffolds, the intended tissue formation process imposes r...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...